著者
永井 敏之
出版者
一般社団法人 日本高圧力技術協会
雑誌
圧力技術 (ISSN:03870154)
巻号頁・発行日
vol.42, no.3, pp.106-114, 2004 (Released:2004-09-15)
参考文献数
4

Demand for hydrogen is rapidly growing in the current environmental approach to meeting requirements of extremely low-sulfur and increasingly light fuels. The trend toward increase in hydrogen demand is expected to be accelerated with development and commercialization of fuel cell and synthesis fuel oil which are both attracting widespread attention as clean energy technologies. The steam reforming process, which has been used as the most popular industrial hydrogen production technology, is outlined here. The life cycle assessment, which rates net emissions of greenhouse gases from the steam reforming process, is also introduced. In addition, efficient methods for increasing the capacity of the steam reforming process are explained in the light of increasing calls in recent years for revamping hydrogen plants.

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・水素の製造。炭化水素から水素を製造する手段としてスチームリフォーミング法がある。95%が炭化水素のスチームリフォーミング。燃料電池車の水素の製造工程でCO2を排出する。ガソリン車の40%程度。ハイブリッドは60%弱。https://t.co/txfGhZbXcY

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